Picaud T, Le Moigne C, Gomez de Gracia A, Desbois A
Département de Biologie Cellulaire et Moléculaire, Section de Biophysique des Protéines et des Membranes, CEA et CNRS URA 2096, CEA/Saclay, F-91191 Gif-sur-Yvette Cedex, France.
Biochemistry. 2001 Jun 19;40(24):7309-17. doi: 10.1021/bi0106641.
Soret-excited resonance Raman (RR) spectra of the spinach cytochrome b6f complex (cyt b6f) are reported for the oxidized, native, ascorbate-reduced, and dithionite-reduced forms. Using excitations at 441.6, 413.1, and 406.7 nm, RR contributions of chlorophyll a, beta-carotene, the c-type heme of cytochrome f, and the b-type hemes of cytochrome b6 of the b6f complex were identified and the data compared to those previously obtained for the Rhodospirillum rubrum bc1 complex [Le Moigne, C., Schoepp, B., Othman, S., Verméglio, A., and Desbois, A. (1999) Biochemistry 38, 1066-1076]. RR bands arising from the b(6)f-associated chlorophyll a and beta-carotene pigments were found to be particularly intense in the spectra excited at 441.6 nm. The frequencies of the phorbin skeleton of chlorophyll a at 1606, 1552, and 1525 cm(-1) are typical of a Mg atom with a single axial ligand. Strong RR bands corresponding to stretching or deformation modes of beta-carotene were detected at 1137, 1157, 1191, 1216, and 1531 cm(-1) in the different forms of cyt b6f. This set of frequencies is assigned to an all-trans configuration of the polyene chain. The redox titrations of the b(6)f complex allow the characterization of RR bands of the three hemes. The nu10, nu2, nu3, and nu8 modes of reduced cyt f are detected at 1619, 1591, 1492, and 356 cm(-1), respectively. From this set of frequencies, one can conclude that the particular histidine/amine heme coordination found in the truncated soluble domain of cyt f is a specific feature of the entire cyt f included in the b6f complex. The frequencies of the nu2, nu8, and nu10 marker modes are consistent with different conformations for the two b-type hemes of cyt b6f. One of these hemes is strongly distorted (nu2, nu8, and nu10 at 1581, 351, and 1610 cm(-1), respectively), while the other one is planar (1586, 345, and 1618 cm(-1), respectively). Largely different structures for the b-type hemes appear to be a common property for the bc1/b6f complexes.
本文报道了菠菜细胞色素b6f复合物(cyt b6f)在氧化态、天然态、抗坏血酸还原态和连二亚硫酸盐还原态下的Soret激发共振拉曼(RR)光谱。利用441.6、413.1和406.7 nm的激发光,鉴定了cyt b6f复合物中叶绿素a、β-胡萝卜素、细胞色素f的c型血红素以及细胞色素b6的b型血红素的RR贡献,并将数据与之前获得的红螺菌bc1复合物的数据进行了比较[勒莫涅,C.,肖普,B.,奥斯曼,S.,韦尔梅利奥,A.,和德布瓦,A.(1999年)《生物化学》38卷,1066 - 1076页]。发现来自b(6)f相关叶绿素a和β-胡萝卜素色素的RR带在441.6 nm激发的光谱中特别强烈。叶绿素a的卟啉骨架在1606、1552和1525 cm(-1)处的频率是具有单个轴向配体的镁原子的典型频率。在cyt b6f的不同形式中,在1137、1157、1191、1216和1531 cm(-1)处检测到对应于β-胡萝卜素拉伸或变形模式的强RR带。这组频率被指定为多烯链的全反式构型。b(6)f复合物的氧化还原滴定允许对三种血红素的RR带进行表征。还原态细胞色素f的ν10、ν2、ν3和ν8模式分别在1619、1591、1492和356 cm(-1)处检测到。从这组频率可以得出结论,在细胞色素f的截短可溶性结构域中发现的特定组氨酸/胺血红素配位是b6f复合物中整个细胞色素f的一个特定特征。ν2、ν8和ν10标记模式的频率与cyt b6f的两个b型血红素的不同构象一致。其中一个血红素严重扭曲(ν2、ν8和ν10分别在1581、351和1610 cm(-1)处),而另一个是平面的(分别为1586、345和1618 cm(-1))。b型血红素的结构差异很大似乎是bc1/b6f复合物的一个共同特性。